Prefabricated cabin combined type rack of secondary equipment
Technical Field
The utility model relates to the technical field of prefabricated cabins, in particular to a combined frame of a prefabricated cabin of secondary equipment.
Background
The prefabricated cabin is a modularized structure which is designed, manufactured and assembled in advance in a factory, is widely applied to the fields of power, communication, medical treatment and the like, and orderly and integrally places primary equipment (such as a generator, a transformer, a transmission line, a power cable and the like) and secondary equipment (such as a fuse, a relay, a miniature electric control device and the like) in a special container-type cabin body, so that a relatively advanced prefabricated substation facility is formed, and the primary equipment, the secondary equipment, the fuse, the relay, the miniature electric control device and the like are mutually matched and work together, and stable operation and efficient management of a power system are ensured.
The existing prefabricated cabin has poor heat dissipation performance, a structure for arranging a heat dissipation component to conduct heat dissipation protection on the prefabricated cabin is lacking, secondary equipment in the prefabricated cabin operates in a high-temperature environment, the resistance of electronic elements can be increased, heat generated when current passes through the equipment can be increased, the equipment is easy to overheat, performance of the equipment can be adversely affected, and stability of the prefabricated cabin during operation is poor.
Disclosure of utility model
Aiming at the problems in the prior art, the utility model provides a combined frame for a prefabricated cabin of secondary equipment, the novel prefabricated cabin is provided with a structure for carrying out heat radiation protection on the prefabricated cabin by arranging a heat radiation assembly, so that the secondary equipment in the prefabricated cabin is prevented from running in a high-temperature environment, the phenomenon that the secondary equipment is overheated is avoided, and the stability of the prefabricated cabin during running can be enhanced.
The utility model solves the technical problems of the prior art by adopting the technical scheme that the secondary equipment prefabricated cabin combined type rack comprises a prefabricated cabin body, a first heat radiation component, a first mounting frame, a second mounting frame, a first ventilation hole and a second ventilation hole, wherein the first mounting frame is arranged at the upper end and the lower end of the interior of the prefabricated cabin body, the second mounting frame is arranged in the first mounting frame, the first heat radiation component is arranged at the upper end of one side of the prefabricated cabin body, the first heat radiation component comprises a heat radiation channel, an axial fan and a screen plate, the axial fan is arranged in the heat radiation channel through a connecting rod, and the screen plate is arranged at one side of the heat radiation channel far away from the prefabricated cabin body;
The prefabricated cabin is characterized in that a reserved opening is formed in one side of the prefabricated cabin body, a reserved opening No. two corresponding to the reserved opening is formed in one side of the installation frame, vent holes No. one are formed in the top and two sides of the installation frame No. two, vent holes No. two are formed in the other side of the prefabricated cabin body, and a bearing plate is arranged in the interior of the installation frame No. two.
Through adopting above-mentioned technical scheme, this novel prefabricated cabin has the structure that sets up radiator unit and carries out heat radiation protection to prefabricated cabin, prevents that the operation of secondary equipment in the prefabricated cabin from producing overheated phenomenon under high temperature environment, avoids secondary equipment to stability when can strengthen prefabricated cabin operation.
Specifically, the first heat radiation assembly further comprises a first fastening screw and a second fastening screw, the first fastening screw is convenient for a person to connect one side of the heat radiation channel with the prefabricated cabin body, and the second fastening screw is convenient for the person to connect the screen plate with the heat radiation channel.
Through adopting above-mentioned technical scheme, fastening screw has played the effect of connecting heat dissipation passageway and prefabricated cabin body, and fastening screw has played the effect of fixed otter board and heat dissipation passageway No. two, has strengthened the stability of heat dissipation subassembly No. one jointly.
Specifically, the side door is installed through the hinge to the one end of prefabricated cabin body, the inboard of side door is provided with the sealing strip.
By adopting the technical scheme, the first mounting frame, the side door and the second mounting frame are respectively provided with two groups, and when the side door and the prefabricated cabin body are closed, the sealing strip can effectively improve the tightness during closing.
Specifically, the mounting groove has all been seted up to the both sides of No. two mounting frame inner walls, the both ends of loading board all are located the inside of mounting groove.
Specifically, both ends of prefabricated cabin body bottom all are provided with the base.
Specifically, the second heat dissipation assembly is installed at the lower end of one side of the prefabricated cabin body.
The utility model has the beneficial effects that:
(1) According to the combined type rack for the prefabricated cabin of the secondary equipment, disclosed by the utility model, a person can detachably install the bearing plate in the second installation frame through the installation groove by arranging the bearing plate in the second installation frame, so that the person can conveniently arrange secondary equipment such as a generator, a transformer, a power transmission line, a power cable, a fuse, a relay, a miniature electric control device and the like on the bearing plate, and the flexibility of disassembly and assembly can be improved.
(2) According to the secondary equipment prefabricated cabin combined type rack, the first installation frame can be used for primarily protecting the second installation frame and the bearing plate in the second installation frame, and the prefabricated cabin body can be used for further protecting the first installation frame and the second installation frame.
(3) According to the secondary equipment prefabricated cabin combined type rack, the first heat dissipation component can be used for forming air convection through the cooperation of the axial flow fan, the second air holes, the first air holes, the second reserved holes and the first reserved holes, so that the prefabricated cabin body is subjected to heat dissipation protection.
Drawings
The utility model will be further described with reference to the drawings and examples.
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a schematic view of a second mounting frame according to the present utility model;
FIG. 3 is a schematic diagram of a first heat dissipating assembly according to the present utility model;
fig. 4 is a schematic view of the prefabricated cabin structure of the present utility model.
The heat dissipation device comprises a prefabricated cabin body 1, a first heat dissipation component 201, a heat dissipation channel 202, an axial flow fan 203, a screen plate 204, a first fastening screw 205, a second fastening screw 3, a second heat dissipation component 4, a side door 5, a sealing strip 6, a hinge 7, a bearing plate 8, a base 9, a first mounting frame 10, a first reserved opening 11, a second mounting frame 12, a mounting groove 13, a first ventilation hole 14, a second reserved opening 15 and a second ventilation hole.
Detailed Description
The utility model is further described in connection with the following detailed description in order to make the technical means, the creation characteristics, the achievement of the purpose and the effect of the utility model easy to understand.
In order to perform heat radiation protection on a prefabricated cabin, avoid the phenomenon that secondary equipment is overheated, and enhance the stability of the prefabricated cabin during operation, as shown in fig. 1-4, the combined type rack for the prefabricated cabin of the secondary equipment comprises a prefabricated cabin body 1, a first heat radiation component 2, a first mounting frame 9, a second mounting frame 11, a first ventilation hole 13 and a second ventilation hole 15, wherein the first mounting frame 9 is arranged at the upper end and the lower end of the inside of the prefabricated cabin body 1, the second mounting frame 11 is arranged in the first mounting frame 9, the first heat radiation component 2 is arranged at the upper end of one side of the prefabricated cabin body 1, the first heat radiation component 2 comprises a heat radiation channel 201, an axial fan 202 and a screen 203, the axial fan 202 is arranged in the inside of the heat radiation channel 201 through a connecting rod, and the screen 203 is arranged at one side of the heat radiation channel 201 away from the prefabricated cabin body 1;
A reserved opening 10 is formed in one side of the prefabricated cabin body 1, a reserved opening 14 corresponding to the reserved opening 10 is formed in one side of the installation frame 9, ventilation holes 13 are formed in the top and two sides of the installation frame 11, ventilation holes 15 are formed in the other side of the prefabricated cabin body 1, and a bearing plate 7 is installed in the installation frame 11.
When the electric power device is used, a person sets the bearing plate 7 in the second installation frame 11 through the installation groove 12, namely, the bearing plate 7 can be detachably installed in the second installation frame 11, so that the person can conveniently set secondary equipment such as a generator, a transformer, a power transmission line, a power cable, a fuse, a relay, a miniature electric control device and the like on the bearing plate 7, and the flexibility of disassembly and assembly can be improved;
The first mounting frame 9 can preliminarily protect the second mounting frame 11 and the bearing plate 7 inside the second mounting frame 11, and the prefabricated cabin body 1 can further protect the first mounting frame 9 and the second mounting frame 11;
Through the cooperation of axial fan 202, no. two bleeder vents 15, no. one bleeder vent 13, no. two reserved openings 14 and No. one reserved openings 10, can utilize radiator unit 2 to form the air convection to carry out the heat dissipation protection to prefabricated cabin body 1.
Illustratively, as shown in fig. 3, the first heat dissipating assembly 2 further includes a first fastening screw 204 and a second fastening screw 205, where the first fastening screw 204 facilitates the connection of one side of the heat dissipating channel 201 with the prefabricated cabin body 1 by a person, and the second fastening screw 205 facilitates the connection of the mesh plate 203 with the heat dissipating channel 201 by a person.
When the heat radiation module is used, the first fastening screw 204 plays a role in connecting the heat radiation channel 201 and the prefabricated cabin body 1, the second fastening screw 205 plays a role in fixing the screen 203 and the heat radiation channel 201, and the stability of the first heat radiation module 2 is enhanced jointly.
As shown in fig. 1 and 4, one end of the prefabricated cabin body 1 is provided with a side door 4 through a hinge 6, and the inner side of the side door 4 is provided with a sealing strip 5.
When the sealing strip is used, the first mounting frame 9, the side door 4 and the second mounting frame 11 are respectively provided with two groups, and when the side door 4 and the prefabricated cabin body 1 are closed, the sealing strip 5 can effectively improve the tightness during closing.
For example, as shown in fig. 2, the two sides of the inner wall of the second mounting frame 11 are provided with mounting grooves 12, and two ends of the bearing plate 7 are located inside the mounting grooves 12.
When in use, the mounting groove 12 is convenient for a person to mount the bearing plate 7 inside the second mounting frame 11.
Illustratively, as shown in fig. 1 and 4, bases 8 are disposed at two ends of the bottom of the prefabricated cabin body 1.
In use, the base 8 is able to support the prefabricated cabin 1.
Illustratively, as shown in fig. 1, a second heat dissipation component 3 is installed at the lower end of one side of the prefabricated cabin body 1.
When the prefabricated cabin body 1 is used, the second heat dissipation component 3 and the first heat dissipation component 2 have the same structure, and can play a role in heat dissipation protection of the prefabricated cabin body 1.
When the utility model is used, a person inserts two ends of the bearing plate 7 into the installation groove 12 in the second installation frame 11, namely the bearing plate 7 can be detachably installed in the second installation frame 11, so that the person can conveniently arrange secondary equipment such as a generator, a transformer, a power transmission line, a power cable, a fuse, a relay, a miniature electric control device and the like on the bearing plate 7;
furthermore, the personnel set the second installation frame 11 in the first installation frame 9, and the first installation frame 9 can primarily protect the second installation frame 11 and the bearing plate 7 in the second installation frame 11;
Further, the personnel set the first mounting frame 9 inside the prefabricated cabin body 1, so that the first mounting frame 9 and the second mounting frame 11 can be further protected;
Further, when the side door 4 and the prefabricated cabin body 1 are closed, the second mounting frame 11 can be plugged;
Further, the axial fan 202 in the first heat dissipation component 2 generates a suction force after running, and air outside the prefabricated cabin body 1 can enter the prefabricated cabin body 1 through the second air holes 15 and the first air holes 13 and flow into the second mounting frame 11, and can enter the inside of the heat dissipation channel 201 in the first heat dissipation component 2 through the second reserved opening 14 and the first reserved opening 10, so that air convection can be formed, and the first heat dissipation component 2 can be used for heat dissipation protection of the prefabricated cabin body 1.
The foregoing has shown and described the basic principles, principal features and advantages of the utility model. It will be understood by those skilled in the art that the present utility model is not limited to the foregoing examples, and that the foregoing description and description are merely illustrative of the principles of this utility model, and various changes and modifications may be made without departing from the spirit and scope of the utility model, which is defined in the appended claims. The scope of the utility model is defined by the appended claims and equivalents thereof.